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A new runoff calculation model based on multi-source radar remote sensing technology

机译:基于多源雷达遥感技术的新径流计算模型

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River runoff changing will directly affect the safety of the surrounding areas. In theory, river runoff can be calculated from water depth, river width and flow velocity. But in the actual monitoring, the observation of water depth, river width and flow velocity is complex. Radar remote sensing can observe target all-time and all-weather, and has the ability to penetrate clouds, rain and fog. The common Radar remote sensing runoff calculation model is depth-runoff relationship model, which is constructed by fitting water depth and in-situ runoff. The river depth is derived from Radar Altimetry (RA) data. But this model has only one input parameter, the accuracy of this model inverted runoff is not high. In view of the above problems, this paper proposed the Multi-source Radar Remote Sensing Runoff Calculation Model (MRRS-RCM). Firstly, river width and relative water depth were derived from Synthetic Aperture Radar (SAR) images and RA data. Secondly, based on the Manning's equation, the flow velocity were described from river width and relative water depth. Thirdly, river width relative water depth, and in-situ runoff were fitted to construct MRRS-RCM. Experiments show the accuracy of MRRS-RCM estimated runoff is better than depth-runoff relationship model, the RRMSE values of MRRS-RCM reach 13%.
机译:河流径流改变将直接影响周边地区的安全性。理论上,河流径流可以从水深,河流宽度和流速计算。但在实际监测中,观察水深,河宽和流速是复杂的。雷达遥感可以观察目标历史和全天候,并有能力渗透云,雨和雾。常见的雷达遥感径流计算模型是深度径流关系模型,由拟合水深和原位径流构成。河流深度来自雷达Altimetry(RA)数据。但此模型只有一个输入参数,这种模型反转径流的准确性不高。鉴于上述问题,本文提出了多源雷达遥感径流计算模型(MRRS-RCM)。首先,河宽和相对水深来自合成孔径雷达(SAR)图像和RA数据。其次,基于曼宁方程,从河宽和相对水深描述了流速。第三,河流宽度相对水深,配合原位径流以构建MRRS-RCM。实验表明MRRS-RCM估计径流的准确性优于深度径流关系模型,MRRS-RCM的RRMSE值达到13%。

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